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Trapped Ion Quantum Computing

Advances in sequential measurement and control of open quantum systems

arXiv
Authors: Stefano Gherardini, Andrea Smirne, Matthias M. Müller, Filippo Caruso

Year

2018

Paper ID

23381

Status

Preprint

Abstract Read

~2 min

Abstract Words

120

Citations

N/A

Abstract

Novel concepts, perspectives and challenges in measuring and controlling an open quantum system via sequential schemes are shown. We discuss how similar protocols, relying both on repeated quantum measurements and dynamical decoupling control pulses, can allow to: (i) Confine and protect quantum dynamics from decoherence in accordance with the Zeno physics. (ii) Analytically predict the probability that a quantum system is transferred into a target quantum state by means of stochastic sequential measurements. (iii) Optimally reconstruct the spectral density of environmental noise sources by orthogonalizing in the frequency domain the filter functions driving the designed quantum-sensor. The achievement of these tasks will enhance our capability to observe and manipulate open quantum systems, thus bringing advances to quantum science and technologies.

Why This Paper Matters

  • This paper contributes to the Trapped-Ion Quantum Computing research area in the Quantum Articles archive.
  • It adds a 2018 reference point for readers tracking recent quantum research.
  • Novel concepts, perspectives and challenges in measuring and controlling an open quantum system via sequential schemes are shown.

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